Zobrazeno 1 - 10
of 24
pro vyhledávání: '"Harald Lorenz"'
Autor:
Marc Armbrüster, Kevin Ploner, Bernhard Klötzer, Simon Penner, Igor Kasatkin, Christoph Rameshan, Thomas Götsch, Harald Lorenz
Publikováno v:
Catalysis Letters
To focus on the influence of the intermetallic compound—oxide interface of Pd-based intermetallic phases in methanol steam reforming (MSR), a co-precipitation pathway has been followed to prepare and subsequently structurally and catalytically char
Autor:
Bernhard Klötzer, Harald Lorenz, Lukas Mayr, Soipatta Soisuwan, Werner Stadlmayr, Thomas Bielz, Christoph Rameshan, Norbert Memmel, Simon Penner, Qian Zhao
Publikováno v:
ChemCatChem. 5:1273-1285
This Minireview summarizes the fundamental results of a comparative inverse-model versus real-model catalyst approach toward methanol steam reforming (MSR) on the highly CO2-selective H2-reduced states of supported Pd/ZnO, Pd/Ga2O3, and Pd/In2O3 cata
Autor:
Michaela Kogler, Thomas Bielz, Ramona Thalinger, Kristian Pfaller, Simon Penner, Daniela Schmidmair, Lukas Mayr, Eva-Maria Köck, Harald Lorenz, Bernhard Klötzer
Publikováno v:
Applied Catalysis A: General. 453:34-44
A set of different Pd/Ga 2 O 3 catalysts has been tested as suitable CO 2 -selective catalysts in methanol steam reforming, formaldehyde steam reforming and formic acid decomposition. Special focus was put on two different polymorphic forms of Ga 2 O
Autor:
Dmitry Zemlyanov, Bernhard Klötzer, Michael Haevecker, Simon Penner, Rosa Arrigo, Raoul Blume, Axel Knop-Gericke, Lukas Mayr, Christoph Rameshan, Harald Lorenz, Robert Schlögl
Publikováno v:
Birck and NCN Publications
Journal of Catalysis
Journal of Catalysis
Graphical abstract PdIn intermetallic phases can be switched in methanol steam reforming between a CO2-selective multilayer and an In-diluted phase by annealing at 453 K or 623 K. Highlights ► A multilayer Pd1In1 phase in MSR is highly CO2-selectiv
Autor:
Tulio C. R. Rocha, Detre Teschner, Simon Penner, Raoul Blume, Bernhard Klötzer, Werner Stadlmayr, Dmitry Zemlyanov, Axel Knop-Gericke, Norbert Memmel, Robert Schlögl, Christoph Rameshan, Harald Lorenz, Michael Hävecker
Publikováno v:
Angewandte Chemie (International Ed. in English)
Autor:
Simon Penner, Werner Stadlmayr, Detre Teschner, Axel Knop-Gericke, Tulio C. R. Rocha, Christoph Rameshan, Harald Lorenz, Robert Schlögl, Dmitry Zemlyanov, Raoul Blume, Norbert Memmel, Bernhard Klötzer, Michael Hävecker
Publikováno v:
Angewandte Chemie. 124:3057-3061
Publikováno v:
The Journal of Physical Chemistry C. 115:6622-6628
The interaction of In2O3 with methanol steam reforming reactants (H2O), intermediates (formaldehyde), and products (CO, CO2) as well as (inverse) water−gas shift reaction mixtures is studied by vol...
Autor:
Simon Penner, Tulio C. R. Rocha, Werner Stadlmayr, Günther Rupprechter, Bernhard Klötzer, Christian Weilach, Christoph Rameshan, Dimitry Zemlyanov, Detre Teschner, Harald Lorenz, Robert Schlögl, Norbert Memmel, Michael Hävecker, Axel Knop-Gericke, Raoul Blume
Publikováno v:
The Journal of Physical Chemistry C. 114:10850-10856
Ultrathin PdZn surface alloys on Pd(111) are model systems well-suited for obtaining a microscopic understanding of the mechanisms of Pd/Zn-based catalysis for methanol steam reforming. The temperature-induced compositional and structural changes of
Autor:
Bernhard Klötzer, Thomas Bielz, Harald Lorenz, Simon Penner, Wilfrid Jochum, Reinhard Kaindl, Frederik Klauser
Publikováno v:
The Journal of Physical Chemistry C. 114:9022-9029
The adsorption, bonding, defect formation, and reactivity of hydrogen on different In2O3 powder samples were studied by a combination of volumetric adsorption, thermal desorption, diffraction, and spectroscopic techniques. Surface reduction was obser
Autor:
Dmitry Zemlyanov, Christoph Rameshan, Raoul Blume, Bernhard Klötzer, Michael Hävecker, Simon Penner, Günther Rupprechter, Harald Lorenz, Norbert Memmel, Tulio C. R. Rocha, Robert Schlögl, Detre Teschner, Axel Knop-Gericke, Christian Weilach, Werner Stadlmayr
Publikováno v:
Angewandte Chemie International Edition. 49:3224-3227